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Phase transition study in a [Cu_2HgI_4: 0***xAgI] mixed composite system

机译:[Cu_2HgI_4:0 *** xAgI]混合复合系统中的相变研究

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摘要

A novel composite superionic system, [Cu_2HgI_4:0-xAgI], (x = 0-2, 0-4, 0-6 mol wt.%), was prepared. A [Cu_2HgI_4] system was used as the host. Electrical conductivity was measured to study the transition behaviour at frequencies of 100 Hz, 120 Hz, 1 kHz and 10 kHz in the temperature range 90-170°C using a Gen Rad 1659 RLC Digibridge. Conductivity increased sharply during the β-α phase transition. Upon increasing the dopant-to-host ratio, the conductivity of the superionic system exhibited Arrhenius (thermally activated)-type behaviour. DTA, DTG, TGA and X-ray powder diffraction were performed to confirm doping effect and transition in the host. The phase transition temperature increased with an increase in the dopant concentration. Activation energies in eV for pre- and post-transition phase behaviour are also reported. Due to an interaction between [Cu_2HgI_4] and AgI, the addition of AgI to [Cu_2HgI_4] shifted the phase transition of the host [Cu_2HgI_4].
机译:制备了一种新颖的复合超离子体系,[Cu_2HgI_4:0-xAgI],(x = 0-2,0-4,0-6 mol wt。%)。 [Cu_2HgI_4]系统用作主机。使用Gen Rad 1659 RLC Digibridge在90-170°C的温度范围内测量电导率以研究100 Hz,120 Hz,1 kHz和10 kHz频率下的跃迁行为。在β-α相变期间,电导率急剧增加。在增加掺杂剂与主体的比例时,超离子系统的电导率表现出Arrhenius(热激活)型行为。进行了DTA,DTG,TGA和X射线粉末衍射,以确认掺杂效果和在主体中的转变。相变温度随着掺杂剂浓度的增加而增加。还报道了过渡前和过渡后行为的eV活化能。由于[Cu_2HgI_4]与AgI之间的相互作用,向[Cu_2HgI_4]添加AgI改变了基质[Cu_2HgI_4]的相变。

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